首页> 外文会议>AIAA/ASCE/AHS/ASC structures, structural dynamics and materials conference;AIAA SciTech Forum >AIAA SciTec 2016 SDM Conference January 4 - 8, 2016, San Diego, CA, AIAA ID 2311373 ANALYSIS OF DESIGNER TAILORED LINEAR AERO-PIEZO-ELASTIC / VISCOELASTIC ENERGY HARVESTING
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AIAA SciTec 2016 SDM Conference January 4 - 8, 2016, San Diego, CA, AIAA ID 2311373 ANALYSIS OF DESIGNER TAILORED LINEAR AERO-PIEZO-ELASTIC / VISCOELASTIC ENERGY HARVESTING

机译:AIAA SciTec 2016 SDM Conference 2016年1月4日至8日,加利福尼亚州圣地亚哥,AIAA ID 2311373分析设计师的尾翼线性气-压电弹性/粘弹性能

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摘要

The governing relations are formulated and solved describing the extraction of energy through piezoelectric (PZT) devices in elastic and viscoelastic wings, a process generally referred to as energy harvesting or scavenging. The process can be used not only to store the recovered energy but also as a control device to prevent torsional divergence, fluter, control reversal, material failures, creep buckling, excessive deflections, etc. This can be accomplished by means of combinations of optimal designer viscoelastic, aerodynamic and PZT or magnetic properties. However, the requirements are diametrically opposed as harvesting calls for large deflections and hence more power generation, while stability demands small and limited deflections. Illustrative examples are presented and evaluated. The evolution to and beyond optimum states of several principal parameters is studied and illustrated.
机译:制定并解决了控制关系,描述了通过弹性和粘弹性机翼中的压电(PZT)装置提取能量的过程,该过程通常称为能量收集或清除。该过程不仅可以用于存储回收的能量,还可以用作控制装置,以防止扭转发散,起伏,控制反转,材料故障,蠕变屈曲,过度挠曲等。这可以通过优化设计器的组合来实现粘弹性,空气动力学和PZT或磁性。但是,由于收割要求大的挠度并因此产生更多的动力,因此截然相反的要求,而稳定性要求小的和有限的挠度。介绍并评估了说明性示例。研究并说明了几个主要参数达到和超越最佳状态的演化过程。

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